Hughes Peter A, Stevens Mark M, Park Hyun-Woo, Federici Brian A, Dennis Elizabeth S, Akhurst Ray
CSIRO Division of Plant Industry, GPO Box 1600, Canberra ACT 2601, Australia.
J Invertebr Pathol. 2005 Jan;88(1):34-9. doi: 10.1016/j.jip.2004.10.004. Epub 2004 Dec 1.
The biopesticide Bacillus thuringiensis israelensis (B.t.i.) is highly toxic to the larvae of Chironomus tepperi, an important pest of aerially sown rice in southern Australia. In this study, all of the known Cry genes and the Cyt1A gene from B.t.i. were expressed and tested for individual toxicity against fourth instar C. tepperi larvae. Possible synergism between toxins in two component mixtures involving all toxins except Cry10A was also evaluated. Of the Cry toxins, only Cry11A and Cry4B displayed substantial toxicity; however, both were 10- to 20-fold less toxic than the parental B.t.i. strain. The only detected synergy was between the mildly toxic Cry4A and Cyt1A toxins. In direct contrast to previous studies with mosquitoes, mixtures of Cry11A/Cry4B and Cry11A/Cyt1A were mildly antagonistic. The activity of Cry11A and Cry4B is sufficient to justify investigation as to whether their expression in transgenic rice plants could provide control of C. tepperi larvae.
生物杀虫剂苏云金芽孢杆菌以色列亚种(B.t.i.)对澳大利亚南部空中播种水稻的重要害虫特珀摇蚊幼虫具有高毒性。在本研究中,表达了B.t.i.的所有已知Cry基因和Cyt1A基因,并测试了它们对特珀摇蚊四龄幼虫的个体毒性。还评估了除Cry10A之外的所有毒素组成的两组分混合物中毒素之间可能存在的协同作用。在Cry毒素中,只有Cry11A和Cry4B表现出显著毒性;然而,二者的毒性均比亲本B.t.i.菌株低10至20倍。唯一检测到的协同作用存在于低毒的Cry4A和Cyt1A毒素之间。与先前对蚊子的研究形成直接对比的是,Cry11A/Cry4B和Cry11A/Cyt1A的混合物具有轻微的拮抗作用。Cry11A和Cry4B的活性足以证明研究它们在转基因水稻植株中的表达是否能够控制特珀摇蚊幼虫是合理的。